Escabí MA, Read HL, Viventi J, Kim DH, Higgins NC, Storace DA, Liu AS, Gifford AM, Burke JF, Campisi M, Kim YS, Avrin AE, Van der Spiegel J, Huang Y, Li M, Wu J, Rogers JA, Litt B, Cohen YE. A high-density, high-channel count, multiplexed ECoG array for auditory-cortex recordings. J Neurophysiol 112: 1566–1583, 2014. First published June 11, 2014; doi:10.1152/jn.00179.2013.— Our understanding of the large-scale population dynamics of neural activity is limited, in part, by our inability to record simultaneously from large regions of the cortex. Here, we validated the use of a large-scale active microelectrode array that simultaneously records 196 multiplexed micro-electrocortigraphical (ECoG) signals from the cortical surface at a very high...
Objective: Electrocorticography grids have been used to study and diagnose neural pathophysiology fo...
Simultaneous recording of optical and electrophysiological signals from multiple cortical areas may ...
Large circuits of neurons are employed by the brain to encode and process information. How this enco...
Our understanding of the large-scale population dynamics of neural activity is limited, in part, by ...
Abstract In neuroscience, single-shank penetrating multi-electrode arrays are standard for sequentia...
High-density electrocortical (ECoG) microelectrode arrays are promising signal-acquisition platform...
This paper introduces improved techniques for multichannel extracellular electrophysiological record...
The application of multi-channel recording electrodes is expanding rapidly, as neuroscientists seek ...
Electrocorticography on the micron scale (micro-ECoG) is an emerging neural sensing modality that pr...
Since the early 1950s, electrocorticography (ECoG), the measurement of electrical potentials on the ...
Advances in microelectrode neural recording systems have made it possible to record extracellular ac...
The cortex is spontaneously active, even in the absence of any particular input or motor output. Dur...
Imaging neural activity across a large (several mm) cortical area with high temporal and spatial res...
We present a micromachined 252-channel ECoG (electrocorticogram)-electrode array, which is made of a...
Multisite recording represents a suitable condition to study microphysiology and network, interactio...
Objective: Electrocorticography grids have been used to study and diagnose neural pathophysiology fo...
Simultaneous recording of optical and electrophysiological signals from multiple cortical areas may ...
Large circuits of neurons are employed by the brain to encode and process information. How this enco...
Our understanding of the large-scale population dynamics of neural activity is limited, in part, by ...
Abstract In neuroscience, single-shank penetrating multi-electrode arrays are standard for sequentia...
High-density electrocortical (ECoG) microelectrode arrays are promising signal-acquisition platform...
This paper introduces improved techniques for multichannel extracellular electrophysiological record...
The application of multi-channel recording electrodes is expanding rapidly, as neuroscientists seek ...
Electrocorticography on the micron scale (micro-ECoG) is an emerging neural sensing modality that pr...
Since the early 1950s, electrocorticography (ECoG), the measurement of electrical potentials on the ...
Advances in microelectrode neural recording systems have made it possible to record extracellular ac...
The cortex is spontaneously active, even in the absence of any particular input or motor output. Dur...
Imaging neural activity across a large (several mm) cortical area with high temporal and spatial res...
We present a micromachined 252-channel ECoG (electrocorticogram)-electrode array, which is made of a...
Multisite recording represents a suitable condition to study microphysiology and network, interactio...
Objective: Electrocorticography grids have been used to study and diagnose neural pathophysiology fo...
Simultaneous recording of optical and electrophysiological signals from multiple cortical areas may ...
Large circuits of neurons are employed by the brain to encode and process information. How this enco...